Lehrstuhl für Physiologie (Vegetative Physiologie)


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Abstract

Journal

Disease-associated missense mutations in the pore loop of polycystin-2 alter its ion channel function in a heterologous expression system (2024) Staudner T, Geiges L, Khamseekaew J, Sure F, Korbmacher C, Ilyaskin A Journal article The small molecule activator S3969 stimulates the epithelial sodium channel by interacting with a specific binding pocket in the channel's β-subunit (2024) Sure F, Einsiedel J, Gmeiner P, Duchstein P, Zahn D, Korbmacher C, Ilyaskin A Journal article Effects of electro-mechanical uncouplers, hormonal stimulation and pacing rate on the stability and function of cultured rabbit myocardial slices (2024) Baron V, Sommer S, Fiegle D, Pfeuffer AK, Peyronnet R, Volk T, Seidel T Journal article Transmembrane Serine Protease 2 and Proteolytic Activation of the Epithelial Sodium Channel in Mouse Kidney (2024) Sure F, Afonso S, Essigke D, Schmidt P, Kalo MZ, Nesterov V, Kißler A, et al. Journal article Protease-activated receptor 2 deficient mice develop less angiotensin II induced left ventricular hypertrophy but more cardiac fibrosis. (2024) Meyer zu Schwabedissen A, Vergarajauregui S, Bertog M, Amann KU, Engel F, Daniel C Journal article Rapid Pacing Decreases L-type Ca2+ Current and Alters Cacna1c Isogene Expression in Primary Cultured Rat Left Ventricular Myocytes (2023) Ritzer A, Röschl T, Nay S, Rudakova E, Volk T Journal article Transmembrane serine protease 2 (TMPRSS2) proteolytically activates the epithelial sodium channel (ENaC) by cleaving the channel's gamma-subunit (2022) Sure F, Bertog M, Afonso S, Diakov A, Rinke R, Madej MG, Wittmann S, et al. Conference contribution Transmembrane serine protease 2 (TMPRSS2) is involved in proteolytic activation of the epithelial sodium channel (ENaC) in mouse cortical collecting duct (mCCDcl1) cells (2022) Sure F, Afonso S, Bertog M, Rinke R, Wittmann S, Gramberg T, Ilyaskin A, Korbmacher C Conference contribution Early effects of aldosterone on Na+ transport and the transcriptome of cultured mouse cortical collecting duct cells (mCCDcl1) (2022) Afonso S, Bertog M, Ilyaskin A, Büttner C, Ekici AB, Korbmacher C Conference contribution Baseline ROMK activity in mouse late distal convoluted and early connecting tubule (DCT2/CNT) is high and probably contributes to aldosterone-independent K+ secretion (2022) Nesterov V, Bertog M, Korbmacher C Conference contribution